Ranjan D, Talat M, Hasan S (2009a) Rice polish: an alternative to conventional adsorbents for
treating arsenic bearing water by up-flow column method. Ind Eng Chem Res 48:10180–10185
Ranjan D, Talat M, Hasan S (2009b) Biosorption of arsenic from aqueous solution using agricultural residue ‘rice polish’. J Hazard Mater 166:1050–1059
Rice EW, Baird RB, Eaton AD, Clesceri LS (2012) Standard methods for the examination of water
and wastewater. American Public Health Association, Washington, DC
Roy P, Choudhury M, Ali M (2013a) As (III) and As (V) adsorption on magnetite nanoparticles:
adsorption isotherms, effect of ph and phosphate, and adsorption kinetics. Int J Chem Environ
Eng 4:55–63
Roy P, Mondal NK, Das B, Das K (2013b) Arsenic contamination in groundwater: a statistical
modeling. J Urban Environ Eng 7:24–29
Roy E, Patra S, Madhuri R, Sharma PK (2016) Europium doped magnetic graphene oxideMWCNT nanohybrid for estimation and removal of arsenate and arsenite from real water
samples. Chem Eng J 299:244–254. https://doi.org/10.1016/j.cej.2016.04.051
Ruthven DM (2006) Adsorption and diffusion. Springer, Berlin, pp 1–43
Saiz J, Bringas E, Ortiz I (2014) New functionalized magnetic materials for As5+ removal:
adsorbent regeneration and reuse. Ind Eng Chem Res 53:18928–18934
Sakthivel TS, Das S, Pratt CJ, Seal S (2017) One-pot synthesis of a ceria–graphene oxide composite
for the efficient removal of arsenic species. Nanoscale 9(10):3367–3374
Salomons W, Förstner U, Mader P (2012) Heavy metals: problems and solutions. Springer, Berlin/
Heidelberg
Samiey B, Cheng C-H, Wu J (2014) Organic-inorganic hybrid polymers as adsorbents for removal
of heavy metal ions from solutions: a review. Materials 7:673–726
Sandoval R, Cooper AM, Aymar K, Jain A, Hristovski K (2011) Removal of arsenic and methylene
blue from water by granular activated carbon media impregnated with zirconium dioxide
nanoparticles. J Hazard Mater 193:296–303
Sato Y, Kang M, Kamei T, Magara Y (2002) Performance of nanofiltration for arsenic removal.
Water Res 36:3371–3377
Sharma SK (2001) Adsorptive iron removal from groundwater. CRC Press, Leiden
Sharma R, Al-Busaidi T (2001) Groundwater pollution due to a tailings dam. Eng Geol 60:235–244
Sharma S, Petrusevski B, Schippers J (2002) Characterisation of coated sand from iron removal
plants. Water Sci Technol Water Supply 2:247–257
Sharma YC, Srivastava V, Singh V, Kaul S, Weng C (2009) Nano-adsorbents for the removal of
metallic pollutants from water and wastewater. Environ Technol 30:583–609
Shen L (2013) Synthesis, characterization and application of metal-organic frameworks. Thesis,
University of Illinois at Urbana-Champaign
Sheng G, Li Y, Yang X, Ren X, Yang S, Hu J, Wang X (2012) Efficient removal of arsenate by
versatile magnetic graphene oxide composites. RSC Adv 2:12400–12407
Shih M-C (2005) An overview of arsenic removal by pressure-drivenmembrane processes. Desalination 172:85–97
Shiklomanov I, Rodde J (2011) Summary of the monograph “world water resources at the
beginning of the 21st century” prepared in the framework of ihp unesco
Shinde RN, Pandey A, Acharya R, Guin R, Das S, Rajurkar N, Pujari P (2013) Chitosan-transition
metal ions complexes for selective arsenic (V) preconcentration. Water Res 47:3497–3506
Singh TS, Pant K (2004) Equilibrium, kinetics and thermodynamic studies for adsorption of As (III)
on activated alumina. Sep Purif Technol 36:139–147
Singh R, Singh S, Parihar P, Singh VP, Prasad SM (2015) Arsenic contamination, consequences
and remediation techniques: a review. Ecotoxicol Environ Saf 112:247–270
Smedley PL, Kinniburgh DG (2002) A review of the source, behaviour and distribution of arsenic
in natural waters. Appl Geochem 17:517–568
Sorlini S, Gialdini F (2010) Conventional oxidation treatments for the removal of arsenic with
chlorine dioxide, hypochlorite, potassium permanganate and monochloramine. Water Res
44:5653–5659
192
T. S. Sakthivel et al.
treating arsenic bearing water by up-flow column method. Ind Eng Chem Res 48:10180–10185
Ranjan D, Talat M, Hasan S (2009b) Biosorption of arsenic from aqueous solution using agricultural residue ‘rice polish’. J Hazard Mater 166:1050–1059
Rice EW, Baird RB, Eaton AD, Clesceri LS (2012) Standard methods for the examination of water
and wastewater. American Public Health Association, Washington, DC
Roy P, Choudhury M, Ali M (2013a) As (III) and As (V) adsorption on magnetite nanoparticles:
adsorption isotherms, effect of ph and phosphate, and adsorption kinetics. Int J Chem Environ
Eng 4:55–63
Roy P, Mondal NK, Das B, Das K (2013b) Arsenic contamination in groundwater: a statistical
modeling. J Urban Environ Eng 7:24–29
Roy E, Patra S, Madhuri R, Sharma PK (2016) Europium doped magnetic graphene oxideMWCNT nanohybrid for estimation and removal of arsenate and arsenite from real water
samples. Chem Eng J 299:244–254. https://doi.org/10.1016/j.cej.2016.04.051
Ruthven DM (2006) Adsorption and diffusion. Springer, Berlin, pp 1–43
Saiz J, Bringas E, Ortiz I (2014) New functionalized magnetic materials for As5+ removal:
adsorbent regeneration and reuse. Ind Eng Chem Res 53:18928–18934
Sakthivel TS, Das S, Pratt CJ, Seal S (2017) One-pot synthesis of a ceria–graphene oxide composite
for the efficient removal of arsenic species. Nanoscale 9(10):3367–3374
Salomons W, Förstner U, Mader P (2012) Heavy metals: problems and solutions. Springer, Berlin/
Heidelberg
Samiey B, Cheng C-H, Wu J (2014) Organic-inorganic hybrid polymers as adsorbents for removal
of heavy metal ions from solutions: a review. Materials 7:673–726
Sandoval R, Cooper AM, Aymar K, Jain A, Hristovski K (2011) Removal of arsenic and methylene
blue from water by granular activated carbon media impregnated with zirconium dioxide
nanoparticles. J Hazard Mater 193:296–303
Sato Y, Kang M, Kamei T, Magara Y (2002) Performance of nanofiltration for arsenic removal.
Water Res 36:3371–3377
Sharma SK (2001) Adsorptive iron removal from groundwater. CRC Press, Leiden
Sharma R, Al-Busaidi T (2001) Groundwater pollution due to a tailings dam. Eng Geol 60:235–244
Sharma S, Petrusevski B, Schippers J (2002) Characterisation of coated sand from iron removal
plants. Water Sci Technol Water Supply 2:247–257
Sharma YC, Srivastava V, Singh V, Kaul S, Weng C (2009) Nano-adsorbents for the removal of
metallic pollutants from water and wastewater. Environ Technol 30:583–609
Shen L (2013) Synthesis, characterization and application of metal-organic frameworks. Thesis,
University of Illinois at Urbana-Champaign
Sheng G, Li Y, Yang X, Ren X, Yang S, Hu J, Wang X (2012) Efficient removal of arsenate by
versatile magnetic graphene oxide composites. RSC Adv 2:12400–12407
Shih M-C (2005) An overview of arsenic removal by pressure-drivenmembrane processes. Desalination 172:85–97
Shiklomanov I, Rodde J (2011) Summary of the monograph “world water resources at the
beginning of the 21st century” prepared in the framework of ihp unesco
Shinde RN, Pandey A, Acharya R, Guin R, Das S, Rajurkar N, Pujari P (2013) Chitosan-transition
metal ions complexes for selective arsenic (V) preconcentration. Water Res 47:3497–3506
Singh TS, Pant K (2004) Equilibrium, kinetics and thermodynamic studies for adsorption of As (III)
on activated alumina. Sep Purif Technol 36:139–147
Singh R, Singh S, Parihar P, Singh VP, Prasad SM (2015) Arsenic contamination, consequences
and remediation techniques: a review. Ecotoxicol Environ Saf 112:247–270
Smedley PL, Kinniburgh DG (2002) A review of the source, behaviour and distribution of arsenic
in natural waters. Appl Geochem 17:517–568
Sorlini S, Gialdini F (2010) Conventional oxidation treatments for the removal of arsenic with
chlorine dioxide, hypochlorite, potassium permanganate and monochloramine. Water Res
44:5653–5659
192
T. S. Sakthivel et al.
